Automate Testing SSAS Tabular Models

Automate Testing SSAS Tabular

In real world SSAS Tabular projects, you need to run many different testing scenarios to prove your customer that the data in Tabular model is correct. If you are running a Tabular Model on top of a proper data warehouse then your life would be a bit easier than when you build your semantic model on top of an operational database. However it would be still a fairly time-consuming process to run many test cases on Tabular Model, then run similar tests on the data warehouse and compare the results. So your test cases always have two sides, one side is your source database that can be a data warehouse and the other side is the Tabular Model. There are many ways to test the system, you can browse your Tabular Model in Excel, connecting to your Data Warehouse in Excel and create pivot tables then compare the data coming from Tabular Model and the data coming from the Data Warehouse. But, for how many measures and dimensions you can do the above test in Excel?

The other way is to run DAX queries on Tabular Model side. If your source database is a SQL Server database, then you need to run T-SQL queries on the database side then match the results of both sides to prove the data in Tabular Model is correct.

In this post I’d like to share with you a way to automate the DAX queries to be run on a Tabular model.

Straight away, this is going to be a long post, so you can make or take a cup of coffee while enjoying your reading.

While I will not cover the other side, the source or the data warehouse side, it is worth to automate that part too as you can save heaps of times. I’m sure a similar process can be developed in SQL Server side, but, I leave that part for now. What I’m going to explain in this post is just one of many possible ways to generate and run DAX queries and store the results in SQL Server. Perhaps it is not perfect, but, it is a good starting point. If you have a better idea it would be great to share it with us in the comments section below this post.

Requirements

  • SQL Server Analysis Services Tabular 2016 and later (Compatibility Level 1200 and higher)
  • An instance of SQL Server
  • SQL Server Management Studio (SSMS)

How does it work

What I’m going to explain is very simple. I want to generate and run DAX queries and capture the results. The first step is to get all measures and their relevant dimensions, then I slice all the measures by all relevant dimensions and get the results. At the end I capture and store the results in a SQL Server temp table. Let’s think about a simple scenario:

  • you have just one measure, [Internet Sales], from ‘Internet Sales’ table
  • The measure is related to just one dimension, “Date” dimension
  • The “Date” dimension has only four columns, Year, Month, Year-Month and Date
  • you want to slice [Internet Sales] by Year, Month, Year-Month and Date

So you need to write four DAX queries as below:

EVALUATE
SUMMARIZE(
    'Internet Sales'
    , Date'[Calendar Year]
    , "Internet Sales", [Internet Total Sales]
)
EVALUATE
SUMMARIZE(
   'Internet Sales'
   , 'Date'[Month Name]
   , "Internet Sales", [Internet Total Sales]
)
EVALUATE
SUMMARIZE(
    'Internet Sales'
   , 'Date'[Year-Month]
   , "Internet Sales", [Internet Total Sales]
)
EVALUATE
SUMMARIZE(
     'Internet Sales'
    , 'Date'[Date]
    , "Internet Sales", [Internet Total Sales]
)

It is easy isn’t it? But, wait. What if you have 10 measures related to 4 dimension and each dimension has 10 columns? That sounds laborious doesn’t it? Well, in real world scenarios you won’t slice all measures by all relevant dimensions, but, you still need to do a lot. What we are going to do is to generate and run the DAX queries and store the results in a table in SQL Server. How cool is that?

OK, this is how it works…

  • Creating a Linked Server for SSAS Tabular instance from SQL Server
  • Generating DAX queries using Tabular DMVs
  • Running the queries through Tabular model and getting/storing the results in a SQL Server temp table

Continue reading “Automate Testing SSAS Tabular Models”

Quick Tips: How to Enable Dataflows In Power BI Service

Dataflows in Power BI Service

Dataflows (Preview) in Power BI Service has been landed yesterday (6th November 2018). I had a little bit of difficulties to enable this cool new feature so I thought it is good to write a Quick tip about it. While Dataflows is under preveiw at the time of writing this quick tip, the situation may be totally different in the future.

Straight away, fully featured Dataflows is available in a Power BI Premium capacity or in a Power BI Embedded Capacity, but, while this is still in preview, you can take advantage of limited features available in your Power BI Pro license. Features like “Linked entities from other dataflows” or “Computed Entities”, like merging tables to a new table, are not available in a Power BI Pro license.

Dataflows Computed Entities

Enabling Dataflows

  • After sign in to Power BI Service click “Settings”
  • Click “Admin Portal”

Power BI Service Admin Portal

  • Select Capacity type you are in, either Premium or Embedded
  • Click on a desired capacity that you’d like to enable Dataflows

Managing a Premium Capacity in Power BI Admin Portal

  • Scroll down to find and click “Workloads” under “More Options”
  • Enable “Dataflows (Preview)”
  • If you stick to the default “Max Memory (%)” value that is set to 20 you’ll get an error message saying “There was an issue updating your workload setting. Try again in a little while”. The error message is not helpful at all. The reason you get the error message is that the “Max Memory (%)” value must be a number between 27 to 100 while the default is 20.

Enabling Dataflows in Power BI Service Continue reading “Quick Tips: How to Enable Dataflows In Power BI Service”

Quick Tips: Boolean Conditions when Querying SSAS DMVs

Boolean Comparison in SSAS DMVs, Error: A Boolean expression is not allowed in the context

If you are querying SSAS DMVs you may want to add some conditions in the query.

Something like getting all active relationships, perhaps like below:

select * from $SYSTEM.TMSCHEMA_RELATIONSHIPS where IsActive = 'true'

Running the above query on an instance of SSAS Tabular gives you the following error message:

Error: A Boolean expression is not allowed in the context …

Fixing this is quite easy, run the below query to get active relationships:

select * from $SYSTEM.TMSCHEMA_RELATIONSHIPS where IsActive

Boolean Comparison in SSAS DMVs

And to get inactive relationships run this one:

select * from $SYSTEM.TMSCHEMA_RELATIONSHIPS where not IsActive

Boolean Comparison in SSAS DMVs

Using Unicode Characters in Power BI

Unicode Characters in Power BI

There are several scenarios to use Unicode characters in Power BI including but not limited to:

  • Creating simple KPI columns in Table or Matrix visuals
  • To show the status of a measure more visually like using starts
  • Using Unicode characters as icons in your reports representing the subject

Chris Webb explained some of the above scenarios here.

In this post I explain how you can use Power BI as a tool to generate almost all valid Unicode characters in Power BI. You can download the PBIT at the bottom of this post. Then you can copy the Unicode characters from Power BI and use them in all textual parts of your report like visual titles, text boxes and so on.

The Unicode planes start from 0 to 1,114,111 which is decimal equivalent of 0 to 10FFFF in hexadecimal numeral system. For more information on Unicode planes check this out.

So, a simple way to generate all possible Unicode characters is to generate a list of decimal numbers starting from 0 ending at 1,114,111. This way we generate a series of decimal numbers regardless of the gaps between starting and ending Unicode blocks. Then using UNICHAR() function in DAX to generate corresponding Unicode characters. With the following DAX expression you can easily generate a list and the corresponding Unicode characters: Continue reading “Using Unicode Characters in Power BI”